© 2018 IOP Publishing Ltd. Room temperature electron irradiation in aqueous environment is applied to CeO2 nanoparticles using a transmission electron microscope equipped with liquid environmental cell. Oxide dissolution kinetics become accessible at unprecedented scale of spatial and time resolution through irradiation activation of water within a sub-μm size volume, allowing direct measurements of transformation rate and morphologies. Successful live-observation of the formation of nano-needles provides essential inside in how 1D-nanostructures can form. Furthermore, formation of hydrogen bubbles is found and interpreted in relation to the dose needed for ceria dissolution. The results are of importance for many research applications of c...
Nowadays engineered nanomaterials (ENM) are widely present in different areas of our life. Large app...
The role of intermediate phases in CeO2 mesocrystal formation from aqueous Ce(III) solutions subject...
The work was supported by Russian Science Foundation project № 18-72-00041. The authors are grateful...
Room temperature electron irradiation in aqueous environment is applied to CeO2 nanoparticles using ...
Deliberate electron irradiation of cerium oxide nanoparticles in water is used to trigger chemical r...
The experimental work involving the development and application of in situ liquid stages in the TEM ...
Due to excellent physical and chemical properties, cerium oxide (ceria, CeO2) has attracted much att...
Ceria nanoparticles (NPs) rapidly and easily cycle between Ce(III) and Ce(IV) oxidation states, maki...
Cerium oxide nanoparticles present an interesting material for different industrial applications in ...
The unique properties which make cerium dioxide (ceria) nanoparticles (NPs) so useful in e.g. cataly...
Ceria (CeO2) exhibits high reversible oxygen storage capacity at intermediate temperatures (500–800 ...
The unique properties which make cerium dioxide (ceria) nanoparticles (NPs) so useful in e.g. cataly...
The widespread usage of nanotechnology in many essential products has raised concerns about the poss...
Cerium dioxide nanoparticles (NPs) were synthesised using a novel precipitation procedure and their ...
Ceria nanoparticles (NPs), due to their widespread applications, have attracted a lot of concern abo...
Nowadays engineered nanomaterials (ENM) are widely present in different areas of our life. Large app...
The role of intermediate phases in CeO2 mesocrystal formation from aqueous Ce(III) solutions subject...
The work was supported by Russian Science Foundation project № 18-72-00041. The authors are grateful...
Room temperature electron irradiation in aqueous environment is applied to CeO2 nanoparticles using ...
Deliberate electron irradiation of cerium oxide nanoparticles in water is used to trigger chemical r...
The experimental work involving the development and application of in situ liquid stages in the TEM ...
Due to excellent physical and chemical properties, cerium oxide (ceria, CeO2) has attracted much att...
Ceria nanoparticles (NPs) rapidly and easily cycle between Ce(III) and Ce(IV) oxidation states, maki...
Cerium oxide nanoparticles present an interesting material for different industrial applications in ...
The unique properties which make cerium dioxide (ceria) nanoparticles (NPs) so useful in e.g. cataly...
Ceria (CeO2) exhibits high reversible oxygen storage capacity at intermediate temperatures (500–800 ...
The unique properties which make cerium dioxide (ceria) nanoparticles (NPs) so useful in e.g. cataly...
The widespread usage of nanotechnology in many essential products has raised concerns about the poss...
Cerium dioxide nanoparticles (NPs) were synthesised using a novel precipitation procedure and their ...
Ceria nanoparticles (NPs), due to their widespread applications, have attracted a lot of concern abo...
Nowadays engineered nanomaterials (ENM) are widely present in different areas of our life. Large app...
The role of intermediate phases in CeO2 mesocrystal formation from aqueous Ce(III) solutions subject...
The work was supported by Russian Science Foundation project № 18-72-00041. The authors are grateful...